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JRA1 PCMAG field mapping Elements of the work: Hall sensors: improvements and production Calibration of Hall sensor cards Mechanical mapping device Installation.

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Presentation on theme: "JRA1 PCMAG field mapping Elements of the work: Hall sensors: improvements and production Calibration of Hall sensor cards Mechanical mapping device Installation."— Presentation transcript:

1 JRA1 PCMAG field mapping Elements of the work: Hall sensors: improvements and production Calibration of Hall sensor cards Mechanical mapping device Installation of permanent probes Operation of PCMAG for the calibration Data collection Data analysis

2 Disclaimer Sorry, I am just back from long holidays, had no time to collect very detailed info so far. So this talk is rather superficial No detailed performance figures

3 Hall sensors: improvements and production Improvements of the Hall sensors taking into account the lessons learnt from LHC field maps: –Modification to Hall-probe biasing circuit –Improvements of sensors addressing and readout Design and tests were carried out in Spring 2007 30 new 3D Hall sensors cards were produced for July 2007

4 Calibration of Hall sensor cards Prior to mounting them on the field mapper, all new sensor cards were calibrated at CERN. Stability observed: very close to the target value

5 Mechanical mapping device http://www.linearcollider.org/newsline/readmore_20070726_ftr1.html Installed at the EUDET test beam in DESY, on July 19 th 2007 Excellent alignment precision (<0.2 mm deviation from mechanical magnet axis). Remote control over z-axis, manual phi-control. Allowed to take data in ~3 days.

6 Some photographs http://www-jlc.kek.jp/~ikematsu/archives/photos/pcmag-fieldmap/

7 Installation of permanent probes 2 permanent probes are installed –1 in the “neck” of PCMAG –1 glued to the outside of PCMAG Together with the measurement of the current in the magnet they will form a redundant check of the magnet strength at all times (nominal ~1 Tesla)

8 Operation of PCMAG for the calibration Thanks to the help of Osamu Araoka, Takeshi Matsuda and the DESY team The cooling of the magnet took ~5 days (?) Some improvements to the magnet infrastructure have been proposed as a result of experience gained during the mapping campaign

9 Data collection The result of the EUDET mapping can be found on AFS: /afs/cern.ch/user/f/fxb/public/eudet The directory eudetr contains the raw data, eudetc contains the converted data. The format of the latter is: sensor#, Bx,By,Bz[Tesla],temp[deg C]. Measurements were made every 5 degrees in PHI and every 14 mm in Z. From run eu28 on sensor 4 has been put in position properly. Files beginning with "offset" contain measurements with field off. Files beginning with "eudet" contain measurements with fixed probes. The NMR recordings on magnet axes were: pos [cm] B [Tesla] -10 0.97852 -5 0.98079 0 0.98160 +5 0.98096 +10 0.97838 0 = max field, positiv direction is towards big opening.

10 Data analysis Work will be carried out by Christian Grefe from DESY, who has started working on the data. Christian will come to CERN for a few months (as of September ‘07) to carry out the task.

11 Conclusions Thanks to the EUDET project improved 3D Hall sensors could be developed and constructed The field mapping of PCMAG was successfully accomplished the end of July 2007 Our aim is to finish the data analysis for the end of 2007.


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